This paper is about the design of an automated machine to cut turbot fish specimens. Machine vision is a key part of this project as it is used to compute a cutting curve for the specimen head. This task is impossible to be carried out by mechanical means. Machine vision is used to detect head boundary and a robot is used to cut the head. Binarization and mathematical morphology are used to detect fish boundary and this boundary is subsequently analyzed (using Hough transform and convex hull) to detect key points and thus defining the cutting curve. Afterwards, mechanical systems are used to slice fish to get an easy presentation for end consumer (as fish fillets than can be easily marketed and consumed).
翻译:本文涉及用于切割涡轮鱼标本的自动机器的设计。 机器视觉是这个项目的一个关键部分, 因为它用来计算标本头的切线曲线。 这项任务不可能用机械手段完成。 机器视觉用来探测头部边界, 机器人用来切割头部。 使用比喻和数学形态学来探测鱼的边界, 随后分析这个边界( 使用哈夫变形和锥形船体) 来探测关键点, 从而界定切线曲线 。 之后, 机械系统用来切鱼以方便最终消费者的演示( 鱼片不能轻易销售和消费 ) 。